𝔖 Bobbio Scriptorium
✦   LIBER   ✦

A numerical model for dynamic soil liquefaction analysis

✍ Scribed by D.S Liyanapathirana; H.G Poulos


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
366 KB
Volume
22
Category
Article
ISSN
0267-7261

No coin nor oath required. For personal study only.

✦ Synopsis


This paper presents an effective stress-based numerical model, which can be used to obtain pore pressure build up and consequent loss of soil strength due to earthquake-induced shaking. The main advantage of the new method is that it needs few model parameters compared to many existing effective stress-based ground response analysis methods. The pore pressure generation is calculated using the equivalent cycle pore pressure model developed by Seed et al. [J Geotech Engng Div, ASCE 102 (1976) 323] but the equations are used in a different manner. Pore pressure generation calculated by the new method and the equivalent cycle method for different load patterns shows that the new method can predict pore pressures which are in better agreement with experimental data, irrespective of the loading pattern. The equivalent cycle method predicts results in agreement with experimental data only when the loading pattern is highly irregular, and tends to under-predict pore pressure ratios for other loading patterns. To demonstrate the ability of the new method in simulating earthquake-induced site response and liquefaction-related ground deformations, the Kobe, 1995 earthquake has been analysed. The results obtained from the new analysis agree reasonably well with recorded accelerations and lateral ground displacements at Port Island, Kobe.


πŸ“œ SIMILAR VOLUMES


A practical numerical method for large s
✍ Yuan Di; Tadanobu Sato πŸ“‚ Article πŸ“… 2004 πŸ› Elsevier Science 🌐 English βš– 406 KB

Accurate prediction of the liquefaction of saturated soils is based on strong coupling between the pore fluid phase and soil skeleton. A practical numerical method for large strain dynamic analysis of saturated soils is presented. The u -p formulation is used for the governing equations that describ

Numerical model for unsaturated sandy so
✍ Hanbing Bian; Isam Shahrour πŸ“‚ Article πŸ“… 2009 πŸ› Elsevier Science 🌐 English βš– 622 KB

This paper includes a presentation of a numerical model for the description of the behavior of unsaturated sandy soils under cyclic loading with particular attention for liquefaction. The model is developed within the framework of the theory of Biot and the formulation of Coussy. It is also based on

A numerical model for dynamic ice–struct
✍ T. KΓ€rnΓ€; K. Kamesaki; H. Tsukuda πŸ“‚ Article πŸ“… 1999 πŸ› Elsevier Science 🌐 English βš– 348 KB

This paper describes a numerical method for ice load determination in conditions where a drifting ice Β―oe acts on a vertical oshore structure. The model is based on a substructure technique where separate dynamic models of the interacting media and components are combined by a computer model. First,